The present invention relates to a thin film drying method, and more particularly to an alignment film drying method and a method for manufacturing a display panel.
Liquid crystal displays (LCDs) have been widely applied in electrical products. Currently, most of LCDs are backlight type LCDs which comprise a liquid crystal panel and a backlight module. The liquid crystal display panel is composed of two transparent substrates and a liquid crystal sealed there-between.
In the process for manufacturing the liquid crystal display panel, it is necessary to manufacture an alignment film for determining the orientation of the liquid crystal. In general, the material of the alignment film is a liquid polyimide (PI) which is formed on the substrate of the liquid crystal display panel by coating. Subsequently, the alignment film needs to be heated, so as to evaporate a liquid solvent in the PI, thereby forming a solid alignment film.
In a general process for heating the alignment film, the substrate with the coated alignment film is placed above a heating plate for heating by using supporting pins which are disposed on the heating plate. The temperature uniformity of the heating and a drying speed are important factors affecting the alignment film. However, in this heating process, the temperature is non-uniform at the positions where the supporting pins contact with the substrate, i.e. the temperature at the positions of the substrate contacting with the supporting pins is different to the temperature at the other positions thereof. Therefore, a non-uniform drying speed of the alignment film coated on the substrate occurs, thus significantly deteriorating the film quality of the alignment film.
As a result, it is necessary to provide a thin film drying method, an alignment film drying method and a method for manufacturing a display panel to solve the problems existing in the conventional technologies, as described above.
A primary object of the present invention is to provide a drying method of a thin film comprising a liquid solvent, and the method comprises the following steps: forming the thin film on a substrate; placing the substrate in a vacuum chamber; and reducing a pressure in the vacuum chamber, so as to allow the liquid solvent of the thin film in the vacuum chamber to vaporize.
Another object of the present invention is to provide a drying method of an alignment film comprising a liquid solvent, and the method comprises the following steps: forming the alignment film on a substrate; placing the substrate in a vacuum chamber; and reducing a pressure in the vacuum chamber, so as to allow the liquid solvent of the alignment film in the vacuum chamber to vaporize.
A further object of the present invention is to provide a method for manufacturing a display apparatus, the method comprises the following steps: forming a first alignment film on a first substrate, wherein the first alignment film comprises a liquid solvent; forming a second alignment film on a second substrate, wherein the second alignment film comprises the liquid solvent; placing the first substrate and/or the second substrate in a vacuum chamber; and reducing a pressure in the vacuum chamber down to a predetermined vacuum pressure, so as to allow the liquid solvent of the first alignment film and/or the second alignment film in the vacuum chamber to vaporize; and after the liquid solvent vaporized, forming a liquid crystal layer between the first alignment film and the second alignment film.
In one embodiment of the present invention, the pressure in the vacuum chamber is reduced down to a predetermined vacuum pressure, so as to allow the liquid solvent of the film in the vacuum chamber to vaporize.
In one embodiment of the present invention, the predetermined vacuum pressure is larger than or equal to 13 Pa and less than or equal to 53 Pa.
In one embodiment of the present invention, the predetermined vacuum pressure is larger than or equal to 26 Pa and less than or equal to 53 Pa.
In one embodiment of the present invention, a temperature in the vacuum chamber is larger than or equal to 22° C. and less than or equal to 27° C.
In one embodiment of the present invention, the method further comprises the following step: after the liquid solvent vaporized for a predetermined time, heating the alignment film under a normal pressure wherein a temperature for heating is larger than or equal to 80° C. and less than or equal to 100° C.
In one embodiment of the present invention, after heating the alignment films, implementing a high-temperature heating to the alignment films, wherein temperature of the high-temperature heating is larger than or equal to 220° C. and less than or equal to 230° C.
The thin film drying method, the alignment film drying method and the method for manufacturing the display panel of the present invention can dry the thin film under the normal temperature condition with heating, so as to dry the thin film under a uniform temperature (normal temperature) condition for enhancing the film quality after drying.
The structure and the technical means adopted by the present invention to achieve the above and other objects can be best understood by referring to the following detailed description of the preferred embodiments and the accompanying drawings.
The following embodiments are referring to the accompanying drawings for exemplifying specific implementable embodiments of the present invention. Furthermore, directional terms described by the present invention, such as upper, lower, front, back, left, right, inner, outer, side and etc., are only directions by referring to the accompanying drawings, and thus the used directional terms are used to describe and understand the present invention, but the present invention is not limited thereto.
In the drawings, structure-like elements are labeled with like reference numerals.
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When the liquid solvent of the alignment films 112, 122 in the vacuum chamber 101 vaporize under the normal temperature condition, the pressure therein is the predetermined vacuum pressure, such as larger than or equal to 13 Pa and less than or equal to 53 Pa. The predetermined vacuum pressure can be determined according to the composition of the liquid solvent of the alignment films 112, 122 and the normal temperature condition (the current environmental temperature). For example, in this embodiment, the composition of the liquid solvent of the alignment films 112, 122 may be BC or NMP, wherein the content of the BC is 51%, and the content of the NMP is 45%, and the vapor pressure of the BC is 266 Pa, and vapor pressure of the NMP is 53 Pa. At this time, the predetermined vacuum pressure may be larger than or equal to 26 Pa and less than or equal to 53 Pa, so as to allow the liquid solvent of the alignment films 112, 122 to vaporize under the normal temperature condition of the temperature which is larger than or equal to 22° C. and less than or equal to 27° C.
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Therefore, the thin film drying method of the present invention can be applied to the fabrication of the liquid crystal display panel 100 for drying the alignment films 112, 122. When implementing the drying method of the thin film, the thin film can be formed on the substrate (such as the first substrate 110 and/or the second substrate 120). Subsequently, the substrate with the thin film waited for drying is placed in the vacuum chamber 101. Subsequently, the pressure in the vacuum chamber 101 is reduced down to the predetermined vacuum pressure, so as to allow the liquid solvent of the thin film in the vacuum chamber 101 to vaporize for drying it. However, the thin film drying method may also be applied to dry other thin films but not limited to the above description.
As described above, the thin film drying method, the alignment film drying method and the method for manufacturing the display apparatus of the present invention can dry the thin film under the normal temperature condition without heating, thereby preventing the problem of non-uniform heating temperature. Therefore, with the drying method of the present invention, the thin film (such as the alignment films) can have great film quality after drying. For example, the thin film can have a uniform thickness. Furthermore, in the vacuum drying process, the residual bubble on the substrate can be removed, thereby enhancing the quality of the film on the substrate.
The present invention has been described with a preferred embodiment thereof and it is understood that many changes and modifications to the described embodiment can be carried out without departing from the scope and the spirit of the invention that is intended to be limited only by the appended claims.
Number | Date | Country | Kind |
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201010553829.6 | Nov 2010 | CN | national |